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Bending collapse of multi-cell tubes

机译:弯曲多细胞管的塌陷

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Highlights?Pure bending collapse of multi-cell tubes is investigated.?Dimensionless analysis method is used to predict the response of double-cell tubes.?Theoretical model is proposed to analyze the energy absorption mechanisms.?Theoretical predictions compare well with simulation results.?The proposed theoretical methods are applicable for other multi-cell sections.AbstractDue to excellent energy absorption efficiency under bending collapse, multi-cell beams are extensively used as the components of protection structures. However, the theoretical prediction of their responses is still an unsolved problem. In this paper, two methods: dimensionless analysis method and energy analysis method are employed to derive the bending moment response of multi-cell tubes. Numerical simulations of double-cell tubes with different section dimensions are conducted first. The dimensionless analysis method is then employed to correlate the bending moment of double-cell tubes with the ratio of width to thicknessb/t, the flow stress and the bending rotation angle. Based on Kecman's model, a theoretical model of double-cell tubes is presented and the bending moment response is derived according to the energy equilibrium of the system. Finally, the expression of a rolling radius of plastic hinge lines in the energy analysis method is determined to bridge the two methods. A comparison shows that the predictions provided by the present two methods agree well with the numerical results. Quadruple-cell tubes are also employed to validate the present methods and results show that the present methods are applicable for multi-cell tubes with other cross-sections.Graphical abstractDisplay Omitted]]>
机译:<![cdata [ 突出显示 调查了多细胞管的纯弯曲崩溃。 无量纲分析方法用于预测双细胞管的响应。 理论模型都被提出分析能量吸收机制。 理论Al预测与模拟结果相比很好。 所提出的理论方法适用于其他多单元部分。 抽象 由于弯曲塌陷下的良好的能量吸收效率,多电池梁被广泛使用保护结构的组件。但是,对他们的反应的理论预测仍然是一个未解决的问题。本文采用两种方法:采用无量纲分析方法和能量分析方法来得出多细胞管的弯矩响应。首先进行不同截面尺寸的双细胞管的数值模拟。然后采用无量纲分析方法将双细胞管的弯矩与厚度与厚度的比率相关联 B / t ,流量应力和弯曲旋转角度。基于Kecman的模型,提出了一种双细胞管的理论模型,并且根据系统的能量平衡来导出弯矩响应。最后,确定能量分析方法中的塑料铰链线的轧制半径的表达被确定为桥接两种方法。比较表明,本发明两种方法提供的预测与数值结果很好。 Quadruple-Cell管也用于验证本发明方法,结果表明,本方法适用于具有其他横截面的多细胞管。 图形抽象 显示省略 ]]>

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